Biochemical analysis of the extracellular matrix of human aortas was performed on samples of ascending and descending aortas affected by atherosclerosis in comparison with a control group of nonatherosclerotic aortas. Ulcerated or heavily calcified atheromas were excised and excluded from the analysis in order to differentiate biochemical alterations leading to the formation of atheromas from those due to complications of already formed atheromas. Our results show that the development of atheromas brings about an extensive destruction of elastic fibers and muscular cells, and their place is occupied by other components of the extracellular matrix, most notably, collagen, non-uronic sugars, water, and lipids, which were found significantly increased.
Biochemical analysis of dermal connective tissue was carried out in 14 sub jects affected by primary uncomplicated varicose veins and 14 controls. Skin samples were taken, according to fixed criteria, from operation pieces of total mastectomy for breast cancer. The results suggest that the dermal tissue in these subjects is just thinner than that of controls, confirming previous similar clinical findings. The elective reduction of the collagen content observed, unassociated with changes of other components of the dermal connective tissue, brings evidence for a systemic biochemical defect of the extracellular matrix i.e. a collagen de fect affecting the entire body structure and not only the varicose or pre-varicose veins of the lower limbs.
The biochemical analysis of samples of aortic connective tissue was carried out in 22 subjects from 9 to 84 years old. Aortic samples were taken at necropsy performed after sudden or, more often, traumatic death. The results suggest that aging of the aorta is accompanied by an increase both in collagen content and in total sugar content when expressed as mg/cm 2 while the elastin content, when expressed in the same way, does not undergo any variation.